DocumentCode :
1080710
Title :
Nondiffracting X waves-exact solutions to free-space scalar wave equation and their finite aperture realizations
Author :
Lu, Jian-Yu ; Greenleaf, James F.
Author_Institution :
Mayo Clinic & Found., Rochester, MN, USA
Volume :
39
Issue :
1
fYear :
1992
Firstpage :
19
Lastpage :
31
Abstract :
The authors report families of generalized nondiffracting solutions of the free-space scalar wave equation, and specifically, a subset of these nondiffracting solutions, which are called X waves. These nondiffracting X waves can be almost exactly realized over a finite depth of field with finite apertures and by either broadband or bandlimited radiators. With a 25-mm diameter planar radiator, a zeroth-order broadband X wave will have about 2.5-mm lateral and 0.17-mm axial -6-dB beam widths with a -6-dB depth of field of about 171 mm. A zeroth-order bandlimited X wave was produced and measured in water by a 10 element, 50-mm diameter, 2.5-MHz PZT ceramic/polymer composite J/sub 0/ Bessel nondiffracting annular array transducer with -6-dB lateral and axial beam widths of about 4.7 mm and 0.65 mm, respectively, over a -6-dB depth of field of about 358 mm. Possible applications of X waves in acoustic imaging and electromagnetic energy transmission are discussed.<>
Keywords :
acoustic imaging; acoustic radiators; ultrasonic waves; underwater sound; 2.5 MHz; Bessel nondiffracting annular array transducer; PZT; PZT ceramic/polymer composite; PbZrO3TiO3; acoustic imaging; axial beam width; bandlimited radiators; broadband radiator; depth of field; electromagnetic energy transmission; finite aperture realizations; free-space scalar wave equation; lateral beam width; nondiffracting X waves; zeroth-order bandlimited X wave; Acoustic beams; Acoustic imaging; Acoustic transducers; Apertures; Ceramics; H infinity control; Laplace equations; Partial differential equations; Polymers; Ultrasonic transducers;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.166806
Filename :
166806
Link To Document :
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